A Power Efficient System Design Methodology Employing Approximate Arithmetic Units

Tuba Ayhan, Firat Kula, M. Altun
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引用次数: 6

Abstract

In this work a power efficient approximate system design methodology is introduced and its performance is demonstrated by a 2D-DCT implementation on Spartan 3 FPGA. The method is applicable to any system with arithmetic computation regardless of their architecture, because it utilizes the existing approximate arithmetic units. The novelty of the proposed method is its system analysis approach starting from the highest level and exploring through the sub-blocks down to the basic arithmetic units. It first evaluates a given system block diagram and sets the desired performance limits of each processing block to achieve the desired ultimate quality metric. Then, the arithmetic power consumption is minimized by employing the appropriate arithmetic units which are chosen by linear/non-linear programming with linear constraint solver. The tests on 2D-DCT implementation show a power reduction of 8% for a 0.01 dB PSNR loss for 128x128 images, on the average.
一种采用近似算术单元的节能系统设计方法
在这项工作中,介绍了一种节能的近似系统设计方法,并通过在Spartan 3 FPGA上实现2D-DCT来证明其性能。由于该方法利用了现有的近似算术单元,因此适用于任何具有算术计算的系统,而不考虑其体系结构。该方法的新颖之处在于它的系统分析方法从最高层次开始,通过子块向下探索到基本的算术单元。它首先评估给定的系统框图,并设置每个处理块的期望性能限制,以实现期望的最终质量度量。然后,利用线性约束求解器进行线性/非线性规划,选择合适的算法单元,使算法功耗最小化。对2D-DCT实现的测试表明,对于128x128图像,平均而言,在0.01 dB PSNR损失的情况下,功耗降低了8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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